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Joint Traffic Routing and Virtualized Security Function Activation in Wireless Multihop Networks

机译:无线多跳网络中的联合流量路由和虚拟化安全功能激活

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摘要

Decentralized security function deployment (activation) is an important solution to achieve reliable and secure operations of wireless networks. In this paper, we consider the joint problem of security function activation and traffic routing in a wireless multihop network with the aim of minimizing total energy consumption of all nodes in the network while meeting the security requirements of the users. Firstly, we analyze the tradeoff of energy consumption between preventing security damages with protection functions and remedying it with recovery functions. The analysis takes the uncertainty of attacks and network capacity availability into account. Secondly, if the protection function is to be activated, the activation has to be performed along the route of traffic flows, which means that the traffic routing should also be jointly optimized. Therefore, we formulate this problem as a stochastic optimization model. To obtain the optimal solution, we apply a distributed algorithm, i.e., accelerated distributed augmented Lagrangian algorithm which is ensured to converge. Furthermore, we analytically demonstrate that the solution obtained by the accelerated distributed augmented Lagrangian algorithm is optimal to our stochastic optimization model. Based on the setting from real experiments, the performance evaluation reveals that the optimal solution depends largely on the energy budget and energy consumption of the nodes for transferring traffic and running security functions.
机译:分散式安全功能部署(激活)是实现无线网络可靠且安全操作的重要解决方案。在本文中,我们考虑了无线多跳网络中安全功能激活和流量路由的联合问题,目的是在满足用户安全性要求的同时将网络中所有节点的总能耗降至最低。首先,我们分析了在通过保护功能防止安全损坏与通过恢复功能进行补救之间的能耗权衡。该分析考虑了攻击的不确定性和网络容量的可用性。其次,如果要激活保护功能,则必须沿着交通流的路线进行激活,这意味着还应该共同优化交通路线。因此,我们将此问题表述为随机优化模型。为了获得最佳解决方案,我们应用了分布式算法,即确保收敛的加速分布式增强拉格朗日算法。此外,我们通过分析证明,通过加速分布增强拉格朗日算法获得的解对于我们的随机优化模型是最优的。根据实际实验的设置,性能评估表明,最佳解决方案在很大程度上取决于节点的能源预算和能耗,以传输流量并运行安全功能。

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